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* [PATCH v51 02/10] Rename cluster.c/h -> repack.c/h
@ 2026-03-31 16:55 Álvaro Herrera <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Álvaro Herrera @ 2026-03-31 16:55 UTC (permalink / raw)
---
src/backend/commands/Makefile | 2 +-
src/backend/commands/matview.c | 2 +-
src/backend/commands/meson.build | 2 +-
src/backend/commands/{cluster.c => repack.c} | 6 +++---
src/backend/commands/tablecmds.c | 2 +-
src/backend/commands/vacuum.c | 6 +++---
src/backend/storage/ipc/procsignal.c | 1 +
src/backend/tcop/postgres.c | 1 +
src/backend/tcop/utility.c | 2 +-
src/include/commands/{cluster.h => repack.h} | 12 ++++++------
10 files changed, 19 insertions(+), 17 deletions(-)
rename src/backend/commands/{cluster.c => repack.c} (99%)
rename src/include/commands/{cluster.h => repack.h} (90%)
diff --git a/src/backend/commands/Makefile b/src/backend/commands/Makefile
index c10fdba2bbb..fe1bba3a9b9 100644
--- a/src/backend/commands/Makefile
+++ b/src/backend/commands/Makefile
@@ -18,7 +18,6 @@ OBJS = \
amcmds.o \
analyze.o \
async.o \
- cluster.o \
collationcmds.o \
comment.o \
constraint.o \
@@ -51,6 +50,7 @@ OBJS = \
proclang.o \
propgraphcmds.o \
publicationcmds.o \
+ repack.o \
schemacmds.o \
seclabel.o \
sequence.o \
diff --git a/src/backend/commands/matview.c b/src/backend/commands/matview.c
index d3be8939011..5db4fe75dce 100644
--- a/src/backend/commands/matview.c
+++ b/src/backend/commands/matview.c
@@ -24,8 +24,8 @@
#include "catalog/namespace.h"
#include "catalog/pg_am.h"
#include "catalog/pg_opclass.h"
-#include "commands/cluster.h"
#include "commands/matview.h"
+#include "commands/repack.h"
#include "commands/tablecmds.h"
#include "commands/tablespace.h"
#include "executor/executor.h"
diff --git a/src/backend/commands/meson.build b/src/backend/commands/meson.build
index 90c7e37a429..f624aae74af 100644
--- a/src/backend/commands/meson.build
+++ b/src/backend/commands/meson.build
@@ -6,7 +6,6 @@ backend_sources += files(
'amcmds.c',
'analyze.c',
'async.c',
- 'cluster.c',
'collationcmds.c',
'comment.c',
'constraint.c',
@@ -39,6 +38,7 @@ backend_sources += files(
'proclang.c',
'propgraphcmds.c',
'publicationcmds.c',
+ 'repack.c',
'schemacmds.c',
'seclabel.c',
'sequence.c',
diff --git a/src/backend/commands/cluster.c b/src/backend/commands/repack.c
similarity index 99%
rename from src/backend/commands/cluster.c
rename to src/backend/commands/repack.c
index f241e18b153..20f0a572236 100644
--- a/src/backend/commands/cluster.c
+++ b/src/backend/commands/repack.c
@@ -1,6 +1,6 @@
/*-------------------------------------------------------------------------
*
- * cluster.c
+ * repack.c
* REPACK a table; formerly known as CLUSTER. VACUUM FULL also uses
* parts of this code.
*
@@ -10,7 +10,7 @@
*
*
* IDENTIFICATION
- * src/backend/commands/cluster.c
+ * src/backend/commands/repack.c
*
*-------------------------------------------------------------------------
*/
@@ -33,9 +33,9 @@
#include "catalog/pg_am.h"
#include "catalog/pg_inherits.h"
#include "catalog/toasting.h"
-#include "commands/cluster.h"
#include "commands/defrem.h"
#include "commands/progress.h"
+#include "commands/repack.h"
#include "commands/tablecmds.h"
#include "commands/vacuum.h"
#include "miscadmin.h"
diff --git a/src/backend/commands/tablecmds.c b/src/backend/commands/tablecmds.c
index 0ce2e81f9c2..e2882a50b3b 100644
--- a/src/backend/commands/tablecmds.c
+++ b/src/backend/commands/tablecmds.c
@@ -57,10 +57,10 @@
#include "catalog/storage.h"
#include "catalog/storage_xlog.h"
#include "catalog/toasting.h"
-#include "commands/cluster.h"
#include "commands/comment.h"
#include "commands/defrem.h"
#include "commands/event_trigger.h"
+#include "commands/repack.h"
#include "commands/sequence.h"
#include "commands/tablecmds.h"
#include "commands/tablespace.h"
diff --git a/src/backend/commands/vacuum.c b/src/backend/commands/vacuum.c
index 0ed363d1c85..b179b62b5c8 100644
--- a/src/backend/commands/vacuum.c
+++ b/src/backend/commands/vacuum.c
@@ -9,7 +9,7 @@
*
* VACUUM for heap AM is implemented in vacuumlazy.c, parallel vacuum in
* vacuumparallel.c, ANALYZE in analyze.c, and VACUUM FULL is a variant of
- * CLUSTER, handled in cluster.c.
+ * REPACK, handled in repack.c.
*
*
* Portions Copyright (c) 1996-2026, PostgreSQL Global Development Group
@@ -38,9 +38,9 @@
#include "catalog/pg_database.h"
#include "catalog/pg_inherits.h"
#include "commands/async.h"
-#include "commands/cluster.h"
#include "commands/defrem.h"
#include "commands/progress.h"
+#include "commands/repack.h"
#include "commands/vacuum.h"
#include "miscadmin.h"
#include "nodes/makefuncs.h"
@@ -2293,7 +2293,7 @@ vacuum_rel(Oid relid, RangeVar *relation, VacuumParams params,
if ((params.options & VACOPT_VERBOSE) != 0)
cluster_params.options |= CLUOPT_VERBOSE;
- /* VACUUM FULL is a variant of REPACK; see cluster.c */
+ /* VACUUM FULL is a variant of REPACK; see repack.c */
cluster_rel(REPACK_COMMAND_VACUUMFULL, rel, InvalidOid,
&cluster_params);
/* cluster_rel closes the relation, but keeps lock */
diff --git a/src/backend/storage/ipc/procsignal.c b/src/backend/storage/ipc/procsignal.c
index 7e017c8d53b..7cef6e43661 100644
--- a/src/backend/storage/ipc/procsignal.c
+++ b/src/backend/storage/ipc/procsignal.c
@@ -19,6 +19,7 @@
#include "access/parallel.h"
#include "commands/async.h"
+#include "commands/repack.h"
#include "miscadmin.h"
#include "pgstat.h"
#include "port/pg_bitutils.h"
diff --git a/src/backend/tcop/postgres.c b/src/backend/tcop/postgres.c
index 10be60011ad..9fbaa5c00f0 100644
--- a/src/backend/tcop/postgres.c
+++ b/src/backend/tcop/postgres.c
@@ -39,6 +39,7 @@
#include "commands/event_trigger.h"
#include "commands/explain_state.h"
#include "commands/prepare.h"
+#include "commands/repack.h"
#include "common/pg_prng.h"
#include "jit/jit.h"
#include "libpq/libpq.h"
diff --git a/src/backend/tcop/utility.c b/src/backend/tcop/utility.c
index 2b609bfc824..5f8c766c4be 100644
--- a/src/backend/tcop/utility.c
+++ b/src/backend/tcop/utility.c
@@ -26,7 +26,6 @@
#include "catalog/toasting.h"
#include "commands/alter.h"
#include "commands/async.h"
-#include "commands/cluster.h"
#include "commands/collationcmds.h"
#include "commands/comment.h"
#include "commands/conversioncmds.h"
@@ -46,6 +45,7 @@
#include "commands/proclang.h"
#include "commands/propgraphcmds.h"
#include "commands/publicationcmds.h"
+#include "commands/repack.h"
#include "commands/schemacmds.h"
#include "commands/seclabel.h"
#include "commands/sequence.h"
diff --git a/src/include/commands/cluster.h b/src/include/commands/repack.h
similarity index 90%
rename from src/include/commands/cluster.h
rename to src/include/commands/repack.h
index d6b62c747e8..85061158b0c 100644
--- a/src/include/commands/cluster.h
+++ b/src/include/commands/repack.h
@@ -1,17 +1,17 @@
/*-------------------------------------------------------------------------
*
- * cluster.h
- * header file for postgres cluster command stuff
+ * repack.h
+ * header file for the REPACK command
*
* Portions Copyright (c) 1996-2026, PostgreSQL Global Development Group
* Portions Copyright (c) 1994-5, Regents of the University of California
*
- * src/include/commands/cluster.h
+ * src/include/commands/repack.h
*
*-------------------------------------------------------------------------
*/
-#ifndef CLUSTER_H
-#define CLUSTER_H
+#ifndef REPACK_H
+#define REPACK_H
#include "nodes/parsenodes.h"
#include "parser/parse_node.h"
@@ -52,4 +52,4 @@ extern void finish_heap_swap(Oid OIDOldHeap, Oid OIDNewHeap,
MultiXactId cutoffMulti,
char newrelpersistence);
-#endif /* CLUSTER_H */
+#endif /* REPACK_H */
--
2.47.3
--r2slln3zpmilwu22
Content-Type: text/x-diff; charset=utf-8
Content-Disposition: attachment;
filename="v51-0003-Add-CONCURRENTLY-option-to-REPACK-command.patch"
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-06-16 11:54 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-06-16 11:54 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index 2268cc277bc..127d4415084 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -609,11 +608,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -627,11 +623,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -705,6 +696,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -881,11 +874,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -901,8 +892,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -922,6 +912,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -932,33 +924,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2346,21 +2341,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2372,6 +2391,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2380,76 +2402,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v01-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
* [PATCH 1/8] Use tuple slot to pass tuples for rewriting.
@ 2026-07-15 08:37 Antonin Houska <[email protected]>
0 siblings, 0 replies; 504+ messages in thread
From: Antonin Houska @ 2026-07-15 08:37 UTC (permalink / raw)
This patch tries to adopt the preferable way of handling tuples, i.e. pass the
containing tuple slot rather than the actual tuple. The motivation is that
heap_insert_for_repack() will need a slot in the near future, in order to call
ExecInsertIndexTuples(). Also, in order to set values of dropped attributes to
to NULL, it seems more compact to pass a tuple slot as a workspace than two
arrays (one for values and one for nulls).
---
src/backend/access/heap/heapam_handler.c | 199 +++++++++++++----------
1 file changed, 110 insertions(+), 89 deletions(-)
diff --git a/src/backend/access/heap/heapam_handler.c b/src/backend/access/heap/heapam_handler.c
index bf87430cf01..4db8a16f691 100644
--- a/src/backend/access/heap/heapam_handler.c
+++ b/src/backend/access/heap/heapam_handler.c
@@ -48,14 +48,13 @@
#include "utils/rel.h"
#include "utils/tuplesort.h"
-static void reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate);
-static void heap_insert_for_repack(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull,
- BulkInsertState bistate);
-static HeapTuple reform_tuple(HeapTuple tuple, Relation OldHeap,
- Relation NewHeap, Datum *values, bool *isnull);
+static void reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate);
+static void heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform,
+ BulkInsertStateData *bistate);
+static bool tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc);
+static void clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform);
static bool SampleHeapTupleVisible(TableScanDesc scan, Buffer buffer,
HeapTuple tuple,
@@ -603,11 +602,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
bool is_system_catalog;
Tuplesortstate *tuplesort;
TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
TupleTableSlot *slot;
- int natts;
- Datum *values;
- bool *isnull;
+ TupleTableSlot *reform_slot;
BufferHeapTupleTableSlot *hslot;
BlockNumber prev_cblock = InvalidBlockNumber;
bool concurrent = snapshot != NULL;
@@ -621,11 +617,6 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
*/
Assert(RelationGetTargetBlock(NewHeap) == InvalidBlockNumber);
- /* Preallocate values/isnull arrays */
- natts = newTupDesc->natts;
- values = palloc_array(Datum, natts);
- isnull = palloc_array(bool, natts);
-
/*
* In non-concurrent mode, initialize the rewrite operation. This is not
* needed in concurrent mode.
@@ -699,6 +690,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
slot = table_slot_create(OldHeap, NULL);
hslot = (BufferHeapTupleTableSlot *) slot;
+ reform_slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsVirtual);
/*
* Scan through the OldHeap, either in OldIndex order or sequentially;
@@ -875,11 +868,9 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
int64 ct_val[2];
if (!concurrent)
- reform_and_rewrite_tuple(tuple, OldHeap, NewHeap,
- values, isnull, rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/*
* In indexscan mode and also VACUUM FULL, report increase in
@@ -895,8 +886,7 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
index_endscan(indexScan);
if (tableScan != NULL)
table_endscan(tableScan);
- if (slot)
- ExecDropSingleTupleTableSlot(slot);
+ ExecDropSingleTupleTableSlot(slot);
/*
* In scan-and-sort mode, complete the sort, then read out all live tuples
@@ -916,6 +906,8 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
pgstat_progress_update_param(PROGRESS_REPACK_PHASE,
PROGRESS_REPACK_PHASE_WRITE_NEW_HEAP);
+ slot = MakeSingleTupleTableSlot(RelationGetDescr(OldHeap),
+ &TTSOpsHeapTuple);
for (;;)
{
HeapTuple tuple;
@@ -926,33 +918,36 @@ heapam_relation_copy_for_cluster(Relation OldHeap, Relation NewHeap,
if (tuple == NULL)
break;
+ /*
+ * XXX Ideally we should use tuplesort_gettupleslot() above, but
+ * it retrieves minimal tuples and tuplesort_puttupleslot() cannot
+ * get the tuple descriptor from tuplesort created by
+ * tuplesort_begin_cluster().
+ */
+ ExecStoreHeapTuple(tuple, slot, false);
+
n_tuples += 1;
if (!concurrent)
- reform_and_rewrite_tuple(tuple,
- OldHeap, NewHeap,
- values, isnull,
- rwstate);
+ reform_and_rewrite_tuple(slot, reform_slot, rwstate);
else
- heap_insert_for_repack(tuple, OldHeap, NewHeap,
- values, isnull, bistate);
+ heap_insert_for_repack(NewHeap, slot, reform_slot, bistate);
/* Report n_tuples */
pgstat_progress_update_param(PROGRESS_REPACK_HEAP_TUPLES_INSERTED,
n_tuples);
}
+ ExecDropSingleTupleTableSlot(slot);
tuplesort_end(tuplesort);
}
+ ExecDropSingleTupleTableSlot(reform_slot);
+
/* Write out any remaining tuples, and fsync if needed */
if (rwstate)
end_heap_rewrite(rwstate);
if (bistate)
FreeBulkInsertState(bistate);
-
- /* Clean up */
- pfree(values);
- pfree(isnull);
}
/*
@@ -2340,21 +2335,45 @@ heapam_scan_sample_next_tuple(TableScanDesc scan, SampleScanState *scanstate,
* currently only known to happen as an after-effect of ALTER TABLE
* SET WITHOUT OIDS.
*
- * So, we must reconstruct the tuple from component Datums.
+ * So, we must reconstruct the tuple from component Datums. 'reform' slot
+ * is a workspace for this reconstruction.
*/
static void
-reform_and_rewrite_tuple(HeapTuple tuple,
- Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, RewriteState rwstate)
+reform_and_rewrite_tuple(TupleTableSlot *src, TupleTableSlot *reform,
+ RewriteState rwstate)
{
- HeapTuple newtuple;
+ HeapTuple tuple,
+ newtuple;
+ bool shouldFree,
+ shouldFreeNew;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ /*
+ * The old tuple will not be modified, so do not request materialization.
+ * (A copy can be created for specific slot type though, e.g.
+ * TTSOpsMinimalTuple.)
+ */
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+
+ /* No need to materialize, copy will be created anyway. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ newtuple = ExecFetchSlotHeapTuple(reform, false, &shouldFreeNew);
+ }
+ else
+ {
+ newtuple = heap_copytuple(tuple);
+ shouldFreeNew = true;
+ }
/* The heap rewrite module does the rest */
rewrite_heap_tuple(rwstate, tuple, newtuple);
- heap_freetuple(newtuple);
+ if (shouldFree)
+ heap_freetuple(tuple);
+ if (shouldFreeNew)
+ heap_freetuple(newtuple);
}
/*
@@ -2366,6 +2385,9 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* information). Thus we must use heap_insert() both during the
* catch-up and here.
*
+ * 'reform' is a slot to use for tuple "reforming", typically to get set
+ * values of dropped columns to NULL.
+ *
* We pass the NO_LOGICAL flag to heap_insert() in order to skip logical
* decoding: as soon as REPACK CONCURRENTLY swaps the relation files, it drops
* this relation, so no logical replication subscription should need the data.
@@ -2374,76 +2396,75 @@ reform_and_rewrite_tuple(HeapTuple tuple,
* case.
*/
static void
-heap_insert_for_repack(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull, BulkInsertState bistate)
+heap_insert_for_repack(Relation rel, TupleTableSlot *src,
+ TupleTableSlot *reform, BulkInsertStateData *bistate)
{
- HeapTuple newtuple;
+ HeapTuple tuple;
+ bool shouldFree;
+ TupleTableSlot *slot;
- newtuple = reform_tuple(tuple, OldHeap, NewHeap, values, isnull);
+ tuple = ExecFetchSlotHeapTuple(src, false, &shouldFree);
+ if (tuple_needs_reform(tuple, src->tts_tupleDescriptor))
+ {
+ clear_dropped_attributes(tuple, reform);
+ slot = reform;
+ }
+ else
+ slot = src;
- heap_insert(NewHeap, newtuple, GetCurrentCommandId(true),
- HEAP_INSERT_NO_LOGICAL, bistate);
+ /*
+ * clear_dropped_attributes() should have deformed the tuple, so nothing
+ * should depend on it now.
+ */
+ if (shouldFree)
+ heap_freetuple(tuple);
- heap_freetuple(newtuple);
+ table_tuple_insert(rel, slot, GetCurrentCommandId(true),
+ TABLE_INSERT_NO_LOGICAL, bistate);
}
-/*
- * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
- *
- * Deform the given tuple, set values of dropped columns to NULL, and fill in
- * any values from attmissingval; then form a new tuple and return it. If no
- * attributes need to be changed, a copy of the original tuple is returned.
- * Caller is responsible for freeing the returned tuple.
- *
- * XXX this coding assumes that both relations have the same tupledesc.
- */
-static HeapTuple
-reform_tuple(HeapTuple tuple, Relation OldHeap, Relation NewHeap,
- Datum *values, bool *isnull)
+static bool
+tuple_needs_reform(HeapTuple tuple, TupleDesc tupDesc)
{
- TupleDesc oldTupDesc = RelationGetDescr(OldHeap);
- TupleDesc newTupDesc = RelationGetDescr(NewHeap);
- bool needs_reform = false;
-
/*
* A short tuple might require values from attmissing val, so activate the
* coding unconditionally in that case. The value might legitimally be
* NULL otherwise, so this is slightly wasteful, but it probably beats
* having to test each attribute for presence of attmissingval each time.
*/
- if (HeapTupleHeaderGetNatts(tuple->t_data) < newTupDesc->natts)
- needs_reform = true;
+ if (HeapTupleHeaderGetNatts(tuple->t_data) < tupDesc->natts)
+ return true;
- /*
- * If the column has been dropped but a value is still present, we can
- * optimize storage now by getting rid of it.
- */
- if (!needs_reform)
+ /* Does it have dropped attributes? */
+ for (int i = 0; i < tupDesc->natts; i++)
{
- for (int i = 0; i < newTupDesc->natts; i++)
- {
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped &&
- !heap_attisnull(tuple, i + 1, newTupDesc))
- {
- needs_reform = true;
- break;
- }
- }
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped &&
+ !heap_attisnull(tuple, i + 1, tupDesc))
+ return true;
}
- /* Skip work if no changes are needed */
- if (!needs_reform)
- return heap_copytuple(tuple);
+ return false;
+}
- heap_deform_tuple(tuple, oldTupDesc, values, isnull);
+/*
+ * Subroutine for reform_and_rewrite_tuple and heap_insert_for_repack.
+ *
+ * Set values of dropped columns to NULL,
+ */
+static void
+clear_dropped_attributes(HeapTuple tuple, TupleTableSlot *reform)
+{
+ TupleDesc tupDesc = reform->tts_tupleDescriptor;
+
+ /* Assuming 'reform' is virtual, this deforms the tuple. */
+ Assert(TTS_IS_VIRTUAL(reform));
+ ExecForceStoreHeapTuple(tuple, reform, false);
- for (int i = 0; i < newTupDesc->natts; i++)
+ for (int i = 0; i < tupDesc->natts; i++)
{
- if (TupleDescCompactAttr(newTupDesc, i)->attisdropped)
- isnull[i] = true;
+ if (TupleDescCompactAttr(tupDesc, i)->attisdropped)
+ reform->tts_isnull[i] = true;
}
-
- return heap_form_tuple(newTupDesc, values, isnull);
}
/*
--
2.52.0
--=-=-=
Content-Type: text/x-diff
Content-Disposition: attachment;
filename=v02-0002-Move-functions-to-repack.c.patch
^ permalink raw reply [nested|flat] 504+ messages in thread
end of thread, other threads:[~2026-07-15 08:37 UTC | newest]
Thread overview: 504+ messages (download: mbox mbox.gz follow: Atom feed)
-- links below jump to the message on this page --
2026-03-31 16:55 [PATCH v51 02/10] Rename cluster.c/h -> repack.c/h Álvaro Herrera <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-06-16 11:54 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
2026-07-15 08:37 [PATCH 1/8] Use tuple slot to pass tuples for rewriting. Antonin Houska <[email protected]>
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